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Altered Bimanual Kinetic and Kinematic Motor Control Capabilities in Older Women

Author

Listed:
  • Joon Ho Lee

    (Department of Human Movement Science, Incheon National University, Incheon 22012, Republic of Korea
    Neuromechanical Rehabilitation Research Laboratory, Incheon National University, Incheon 22012, Republic of Korea)

  • Nyeonju Kang

    (Department of Human Movement Science, Incheon National University, Incheon 22012, Republic of Korea
    Neuromechanical Rehabilitation Research Laboratory, Incheon National University, Incheon 22012, Republic of Korea
    Division of Sport Science, Sport Science Institute, Incheon National University, Incheon 22012, Republic of Korea)

Abstract

Older women may experience critical neuromuscular impairments interfering with controlling successful bimanual motor actions. Our study aimed to investigate altered bimanual motor performances in older women compared with younger women by focusing on kinetic and kinematic motor properties. Twenty-two older women and 22 younger women performed bimanual kinetic and kinematic motor tasks. To estimate bimanual kinetic functions, we calculated bimanual maximal voluntary contractions (i.e., MVC) and force control capabilities (i.e., mean force, accuracy, variability, and regularity of the total force produced by two hands) during bimanual hand-grip submaximal force control tasks. For bimanual kinematic performances, we assessed the scores of the Purdue Pegboard Test (i.e., PPT) in both hands and assembly tasks, respectively. For the bimanual MVC and PPT, we conducted an independent t -test between two groups. The bimanual force control capabilities were analyzed using two-way mixed ANOVAs (Group × Force Level; 2 × 2). Our findings revealed that the older women showed less bimanual MVC ( p = 0.046) and submaximal force outputs ( p = 0.036) and greater changes in bimanual force control capabilities as indicated by a greater force variability ( p = 0.017) and regularity ( p = 0.014). Further, the older women revealed lower scores of PPT in both the hands condition ( p < 0.001) and assembly task condition ( p < 0.001). The additional correlation analyses for the older women showed that lower levels of skeletal muscle mass were related to less bimanual MVC ( r = 0.591; p = 0.004). Furthermore, a higher age was related to lower scores in the bimanual PPT assembly task ( r = −0.427; p = 0.048). These findings suggested that older women experience greater changes in bimanual motor functions compared with younger women.

Suggested Citation

  • Joon Ho Lee & Nyeonju Kang, 2023. "Altered Bimanual Kinetic and Kinematic Motor Control Capabilities in Older Women," IJERPH, MDPI, vol. 20(3), pages 1-13, January.
  • Handle: RePEc:gam:jijerp:v:20:y:2023:i:3:p:2153-:d:1046210
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